Abstract
AbstractHigh-entropy alloys (HEAs) have attracted considerable attention to improve performance of various electrocatalyst materials. A comprehensive understanding of the relationship between surface atomic-level structures and catalytic properties is essential to boost the development of novel catalysts. In this study, we propose an experimental study platform that enables the vacuum synthesis of atomic-level-controlled single-crystal high-entropy alloy surfaces and evaluates their catalytic properties. The platform provides essential information that is crucial for the microstructural fundamentals of electrocatalysis, i.e., the detailed relationship between multi-component alloy surface microstructures and their catalytic properties. Nanometre-thick epitaxially stacking layers of Pt and equi-atomic-ratio Cr-Mn-Fe-Co-Ni, the so-called Cantor alloy, were synthesised on low-index single-crystal Pt substrates (Pt/Cr-Mn-Fe-Co-Ni/Pt(hkl)) as a Pt-based single-crystal alloy surface model for oxygen reduction reaction (ORR) electrocatalysis. The usefulness of the platform was demonstrated by showing the outperforming oxygen reduction reaction properties of high-entropy alloy surfaces when compared to Pt-Co binary surfaces.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference54 articles.
1. Zhang, J. et al. Stabilising Pt-based electrocatalysts for oxygen reduction reaction: fundamental understanding and design strategies. Adv. Mater. 33, 1–23 (2021).
2. Shi, G. et al. Unparalleled mitigation of membrane degradation in fuel cells: Via a counter-intuitive approach: Suppression of H2O2 production at the hydrogen anode using a Ptskin-PtCo catalyst. J. Mater. Chem. A 8, 1091–1094 (2020).
3. Čolić, V. & Bandarenka, A. S. Pt alloy electrocatalysts for the oxygen reduction reaction: from model surfaces to nanostructured systems. ACS Catal. 6, 5378–5385 (2016).
4. Oezaslan, M., Hasché, F. & Strasser, P. PtCu3, PtCu, and Pt3Cu alloy nanoparticle electrocatalysts for oxygen reduction reaction in alkaline and acidic media. J. Electrochem. Soc. 159, B444–B454 (2012).
5. Wang, Z., Yao, X., Kang, Y., Xia, D. & Gan, L. Rational development of structurally ordered platinum ternary intermetallic electrocatalysts for oxygen reduction reaction. Catalysts 9, 569 (2019).
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